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Novel Polydimethylsiloxane (PDMS) Pulsatile Vascular Tissue Phantoms for the In-Vitro Investigation of Light Tissue Interaction in Photoplethysmography

机译:新型聚二甲基硅氧烷(PDMS)脉动血管组织术用于光学读物术中的轻微组织相互作用的体外研究

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摘要

Currently there exists little knowledge or work in phantoms for the in-vitro evaluation of photoplethysmography (PPG), and its’ relationship with vascular mechanics. Such phantoms are needed to provide robust, basic scientific knowledge, which will underpin the current efforts in developing new PPG technologies for measuring or estimating blood pressure, blood flow and arterial stiffness, to name but a few. This work describes the design, fabrication and evaluation of finger tissue-simulating pulsatile phantoms with integrated custom vessels. A novel technique has been developed to produce custom polydimethylsiloxane (PDMS) vessels by a continuous dip-coating process. This process can accommodate the production of different sized vessel diameters (1400–2500 µm) and wall thicknesses (56–80 µm). These vessels were embedded into a mould with a solution of PDMS and India ink surrounding them. A pulsatile pump experimental rig was set up to test the phantoms, where flow rate (1–12 L·min ), heart rate (40–120 bpm), and total resistance (0–100% resistance clamps) could be controlled on demand. The resulting flow profiles approximates human blood flow, and the detected contact PPG signal (red and infrared) from the phantom closely resembles the morphology of in-vivo PPG waveforms with signal-to-noise ratios of 38.16 and 40.59 dB, for the red and infrared wavelengths, respectively. The progress made by this phantom development will help in obtaining new knowledge in the behaviour of PPG’s under differing flow conditions, optical tissue properties and differing vessel stiffness.
机译:目前,在体外评估光增生大学(PPG)的体外评价及其与血管机制的关系中存在很少的知识或工作。这种幽灵需要提供强大的基本科学知识,这将支持目前开发新的PPG技术的努力,用于测量或估算血压,血流和动脉僵硬,而不是几个。这项工作描述了用综合定制血管的手指组织模拟脉动模拟脉动模拟的设计,制造和评估。已经开发了一种新颖的技术来通过连续浸涂方法生产定制聚二甲基硅氧烷(PDMS)容器。该过程可以适应不同大小的血管直径(1400-2500μm)和壁厚(56-80μm)的生产。将这些血管嵌入模具中,用PDMS和印度墨水溶液溶液围绕它们。设立脉动泵实验钻机以测试模糊,其中流速(1-12升·min),心率(40-120bpm)和总阻力(0-100%电阻夹)可以按需控制。得到的流程分布近似于人的血流,并且来自幻像的检测到的PPG信号(红色和红外线)非常类似于具有38.16和40.59 dB的信号 - 噪声比的体内PPG波形的形态,用于红色和红外波长分别。这种幻影发展的进展将有助于在不同流动条件下,光学组织特性和不同血管刚度下获得PPG行为的新知识。

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